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法尼醇X受体的后门调控:一系列侧链修饰的鹅去氧胆酸衍生物的设计、合成及生物学评价

Back door modulation of the farnesoid X receptor: design, synthesis, and biological evaluation of a series of side chain modified chenodeoxycholic acid derivatives.

作者信息

Pellicciari Roberto, Gioiello Antimo, Costantino Gabriele, Sadeghpour Bahman M, Rizzo Giovanni, Meyer Udo, Parks Derek J, Entrena-Guadix Antonio, Fiorucci Stefano

机构信息

Dipartimento di Chimica e Tecnologia del Farmaco, Università di Perugia, Via del Liceo, 1, 06123 Perugia, Italy.

出版信息

J Med Chem. 2006 Jul 13;49(14):4208-15. doi: 10.1021/jm060294k.

DOI:10.1021/jm060294k
PMID:16821780
Abstract

Carbamate derivatives of bile acids were synthesized with the aim of systematically exploring the potential for farnesoid X receptor (FXR) modulation endowed with occupancy of the receptor's back door, localized between loops H1-H2 and H4-H5. Since it was previously shown that bile acids bind to FXR by projecting the carboxylic tail opposite the transactivation function 2 (AF-2, helix 12), functionalization of the side chain is not expected to interfere directly with the orientation of H12 but can result in a more indirect way of receptor modulation. The newly synthesized compounds were extensively characterized for their ability to modulate FXR function in a variety of assays, including the cell-free fluorescence resonance energy transfer (FRET) assay and the cell-based luciferase transactivation assay, and displayed a broad range of activity from full agonism to partial antagonism. Docking studies clearly indicate that the side chain of the new derivatives fits in a so far unexploited receptor cavity localized near the "back door" of FXR. We thus demonstrate the possibility of achieving a broad FXR modulation without directly affecting the H12 orientation.

摘要

合成胆汁酸的氨基甲酸酯衍生物,目的是系统地探索法尼醇X受体(FXR)的调节潜力,该调节作用涉及占据位于H1-H2环和H4-H5环之间的受体“后门”。由于先前已表明胆汁酸通过将羧基尾部伸向反式激活功能2(AF-2,螺旋12)的相反方向来与FXR结合,因此预计侧链的功能化不会直接干扰H12的方向,但可能以更间接的方式导致受体调节。通过多种试验,包括无细胞荧光共振能量转移(FRET)试验和基于细胞的荧光素酶反式激活试验,对新合成的化合物调节FXR功能的能力进行了广泛表征,这些化合物表现出从完全激动到部分拮抗的广泛活性。对接研究清楚地表明,新衍生物的侧链适合位于FXR“后门”附近一个迄今未被利用的受体腔中。因此,我们证明了在不直接影响H12方向的情况下实现广泛FXR调节的可能性。

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